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Electromagnetic Wave Propagation, Radiation, and Scattering

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TLDR
In this article, the fundamental field equations of wave propagation in homogeneous and layered media waveguides and cavities have been studied, including the effects of a dipole on the conducting earth, inverse scattering radiometry, and interferometry numerical techniques.
Abstract
Fundamental field equations waves in homogeneous and layered media waveguides and cavities Green's functions radiation from apertures and beam waves periodic structures and coupled mode theory dispersion and anisotropic media antennas, apertures and arrays scattering of waves by conducting and di-electric objects waves in cylindrical structures, spheres and wedges scattering of complex objects geometric theory of diffraction and low fequency techniques planar layers, strip lines, patches and apertures radiation from a dipole on the conducting earth, inverse scattering radiometry, noise temperature and interferometry numerical techniques.

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Monostatic RCS Reduction by Gap-Fill with Epoxy/MWCNT in Groove Pattern

TL;DR: In this paper, the effect of gap-fill on monostatic RCS was investigated by calculating RCS with and without gap fillers in the 15 GHz frequency of Ku-band.
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On Electromagnetic-Acoustic Analogies in Energetic Relations for Waves Interacting with Material Surfaces

TL;DR: In this paper, the classical optical theorem is extended to the case of scattering of electromagnetic surface waves incident at the interface separating a left-handed medium and a right-handed dielectric medium.
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Snow thickness estimation using correlation functions at C-band

TL;DR: A simplified 1D three-layer model is applied to determine the behavior of ACF/FCF and use it for snow thickness retrieval, which results in better accuracy and reliability of thickness estimation.
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Scattering of plane waves by a wedge with different face impedances

TL;DR: In this article, the scattering process of plane waves by a wedge with different face impedances is examined in terms of the closed form series solution, and a new boundary condition is derived using the solution of the reflection problem of plane wave by an impedance plane.
Proceedings ArticleDOI

Experimental measurement of surface plasmon resonance of pyramidal metal nanoparticle tips

TL;DR: In this article, the authors used focused ion beam milling to etch a gold-coated Si 3 N 4 AFM tip, resulting in a pyramidal gold nanoparticle at the end of the tip.